田向东,副研究员,硕士生导师。本科毕业于厦门大学生命科学学院,博士毕业于厦门大学化学化工学院。主要研究方向是亚波长大小到宏观尺度纳米结构的制备、结构性质研究以及生物医学应用。目前以第一作者或者/和通讯作者在Nature Protocols, Angewandte Chemie International Edition, Analytical Chemistry,Nano Research等刊物发表论文十多篇,主持国家自然科学基金2项,福建省、厦门市科技项目各1项、固体表面物理化学国重室开放课题和留学人员科技活动项目择优资助各1项。
研究方向:纳米组装、表面增强拉曼光谱、结构性质关联研究、生物医学传感检测
联系方式:福建省厦门市集美区兑山西珩路258号,中科院澳门银银河7163厦门稀土材料研究中心2#楼617
电子邮箱: tianxd@fjirsm.ac.cn;
发表论文:
1. Fu Bei-Bei; Tian Xiang-Dong (*); Wen Bao-Ying; Zhang Yue-Jiao; Fang Ping-Ping (*); Li Jian-Feng (*), Self-Calibration 3D Hybrid SERS Substrate and Its Application in Quantitative Analysis. Analytical Chemistry 2022, 94, 9578-9585.
2. Gao Fan (?), Tian Xiang-Dong (?), Lin Jia-Sheng, Dong Jin-Chao, Lin Xiu-Mei (*), Li Jian-Feng (*). In Situ Raman, FTIR and XRD spectroscopic studies in fuel cells and rechargeable batteries. Nano Res, 2022, https://doi.org/10.1007/s12274-021-4044-1.
3. Zhu Wei (?); Wen Bao-Ying (?); Jie Ling-Jun; Tian Xiang-Dong (*); Yang Zhi-Lin (*); Radjenovic P-M.; Luo Shi-Yi; Tian Zhong-Qun; Li Jian-Feng (*), Rapid and low-cost quantitative detection of creatinine in human urine with a portable Raman spectrometer. Biosensors and Bioelectronics 2020, 154, 112067.
4. Han Yu (?); Wu Si-Rong; Tian Xiang-Dong (*); Zhang Yun (*), Optimizing the SERS Performance of 3D Substrates through Tunable 3D Plasmonic Coupling toward Label-Free Liver Cancer Cell Classification. ACS Applied Materials & Interfaces 2020, 12 (26), 28965-28974.
5. Lin Ying (?); Zhang Yue-Jiao; Yang Wei-Min; Dong Jin-Chao; Fan Feng-Ru (*); Zhao Yang; Zhang Hua (*); Nataraju Bodappa; Tian Xiang-Dong (*); Yang Zhi-Lin; Stucky Galen D.; Tian Zhong-Qun; Li Jian-Feng (*), Size and dimension dependent surface-enhanced Raman scattering properties of well-defined Ag nanocubes, Applied Materials Today 2019, 14: 224~232.
6. Liu Si-Ying (?); Tian Xiang-Dong (*); Zhang Yun (*); Li Jian-Feng, Quantitative Surface-Enhanced Raman Spectroscopy through the Interface-Assisted Self-Assembly of Three-Dimensional Silver Nanorod Substrates, Analytical Chemistry 2018, 90: 7275~7282.
7. Wu Si-Rong (?); Tian Xiang-Dong (*); Liu Si-Ying; Zhang Yun (*); Li Jian-Feng, Surface-enhanced Raman spectroscopy solution and solid substrates with built-in calibration for quantitative applications, Journal of Raman Spectroscopy 2018, 49: 659~667.
8. Tian Xiang-Dong (?); Lin Ying; Dong Jin-Chao; Zhang Yue-Jiao; Wu Si-Rong; Liu Si-Ying; Zhang Yun (*); Li Jian-Feng (*); Tian Zhong-Qun, Synthesis of Ag Nanorods with Highly Tunable Plasmonics toward Optimal Surface-Enhanced Raman Scattering Substrates Self-Assembled at Interfaces, Advanced Optical Materials 2017, 5: 1700581.
9. Dong Jin-Chao (?); Panneerselvam R; Lin Ying; Tian Xiang-Dong (*); Li Jian-Feng (*), Shell-Isolated Nanoparticle-Enhanced Raman Spectroscopy at Single-Crystal Electrode Surfaces. Advanced Optical Materials 2016, 4, 1144-1158.
10. Tian Xiang-Dong (?*); Chen Shu; Zhang Yue-Jiao; Dong Jin-Chao; Rajapandiyan Panneerselvam; Zhang Yun (*); Yang Zhi-Lin, Li Jian-Feng (*) and Tian Zhong-Qun, Self-assembly of subwavelength nanostructures with symmetry breaking in solution. Nanoscale 2016, 8, 2951-2959.
11. Tian Xiang-Dong (?); Zhou Ya-Dong; Sravan Thota, Zou Sheng-Li; Zhao Jing (*); Plasmonic coupling in single silver nanosphere assemblies by polarization-dependent dark-field scattering spectroscopy. Journal of Physical Chemistry C 2014, 118, 13801-13808.
12. Lin Liang (?); Tian Xiang-Dong (?); Hong Shen-Lian (?); Chen Xing (*); Tian Zhong-Qun (*); A bioorthogonal Raman reporter strategy for SERS detection of glycans on live cells. Angewandte Chemie International Edition 2013, 52, 7266-7271. (Inside Cover).
13. Li Jian-Feng (?); Tian Xiang-Dong (?); Li Song-Bo; Anema Jason R; Yang Zhi-Lin; Ding Yong; Wu Yuan-Fei; Chen Qi-Zhen; Zeng Yong-Ming; Ren Bin; Wang Zhong-Lin (*); Tian Zhong-Qun (*); Surface analysis using shell-isolated nanoparticle-enhanced Raman spectroscopy. Nature Protocols 2013, 8, 52-65.
14. Tian Xiang-Dong (?); Liu Bi-Ju; Li Jian-Feng; Ren Bin; Tian Zhong-Qun (*); SHINERS and plasmonic properties of Au core SiO2 shell nanoparticles with optimal core size and shell thickness. Journal of Raman Spectroscopy 2013, 44, 994-998.